자이로스코픽 효과와 유체 동압 베어링에 의한 비대칭성을 고려한 회전 유연 디스크-스핀들 시스템의 유한요소 강제 진동 해석Finite Element Forced Response of a Spinning Flexible HDD Disk-spindle System Considering the Asymmetry Originating from Gyroscopic Effect and Fluid Dynamic Bearings
- Other Titles
- Finite Element Forced Response of a Spinning Flexible HDD Disk-spindle System Considering the Asymmetry Originating from Gyroscopic Effect and Fluid Dynamic Bearings
- Authors
- 박기용; 장건희; 서찬희
- Issue Date
- Oct-2010
- Publisher
- 한국소음진동공학회
- Keywords
- 고유치 문제; 수반 고유치 문제; 부직교성; 강제 진동 응답; 디스크-스핀들 시스템; 유체 동압 베어링; Eigenvalue Problem; Adjoint Eigenvalue Problem; Biorthogonality; Forced Response; Disk-spindle System; Fluid Dynamic Bearings
- Citation
- 한국소음진동공학회논문집, v.20, no.10, pp.915 - 922
- Indexed
- KCI
- Journal Title
- 한국소음진동공학회논문집
- Volume
- 20
- Number
- 10
- Start Page
- 915
- End Page
- 922
- URI
- https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/172642
- DOI
- 10.5050/KSNVE.2010.20.10.915
- ISSN
- 1598-2785
- Abstract
- This paper presents an efficient method for determining the forced response of a spinning flexible disk-spindle system supported by fluid dynamic bearings(FDBs) in a computer hard disk drive(HDD).
The spinning flexible disk-spindle system is represented by the asymmetric finite element equations of motion originating from the asymmetric dynamic coefficients of the FDBs and the gyroscopic moment of a spinning disk-spindle system. The proposed method utilizes only the right eigenvectors of the eigenvalue problem to transform the large asymmetric finite element equations of motion into a small number of coupled equations, guaranteeing the accuracy of their numerical integration. The results are then back-substituted into the equations of motion to determine the forced response. The effectiveness of the proposed method was verified by comparing it with the responses from the classical methods of mode superposition with the general eigenvalue problems, and mode superposition with modal approximation. The proposed method was shown to be effective in determining the forced response represented by the asymmetric finite element equations of motion of a spinning flexible disk-spindle system supported by FDBs.
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